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Biofilm development in fixed bed biofilm reactors: Experiments and simple models for engineering design purposes

机译:固定床生物膜反应器中生物膜的开发:用于工程设计目的的实验和简单模型

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Biofilm development in a fixed bed biofilm reactor system performing municipal wastewater treatment was monitored aiming at accumulating colonization and maximum biofilm mass data usable in engineering practice for process design purposes. Initially a 6 month experimental period was selected for investigations where the biofilm formation and the performance of the reactors were monitored. The results were analyzed by two methods: for simple, steady-state process design purposes the maximum biofilm mass on carriers versus influent load and a time constant of the biofilm growth were determined, whereas for design approaches using dynamic models a simple biofilm mass prediction model including attachment and detachment mechanisms was selected and fitted to the experimental data. According to a detailed statistical analysis, the collected data have not allowed us to determine both the time constant of biofilm growth and the maximum biofilm mass on carriers at the same time. The observed maximum biofilm mass could be determined with a reasonable error and ranged between 438 gTS/m~2 carrier surface and 843 gTS/m~2, depending on influent load, and hydrodynamic conditions. The parallel analysis of the attachment-detachment model showed that the experimental data set allowed us to determine the attachment rate coefficient which was in the range of 0.05-0.4 m d-1 depending on influent load and hydrodynamic conditions.
机译:监测固定床生物膜反应器系统中进行市政废水处理的生物膜发展,旨在积累定殖和最大的生物膜质量数据,这些数据可在工程实践中用于过程设计。最初选择6个月的实验期进行调查,在其中监测生物膜的形成和反应器的性能。通过两种方法对结果进行了分析:为了简单,稳定的过程设计目的,确定了载体上最大生物膜质量与进水量以及生物膜生长的时间常数,而对于使用动态模型的设计方法,则使用了简单的生物膜质量预测模型包括附着和分离机制的选择和拟合到实验数据。根据详细的统计分析,收集的数据不允许我们同时确定生物膜生长的时间常数和载体上最大生物膜质量。可以根据合理的误差确定观察到的最大生物膜质量,其最大范围为438 gTS / m〜2载体表面至843 gTS / m〜2,具体取决于进水量和流体动力学条件。附着-分离模型的并行分析表明,实验数据集使我们能够根据进水负荷和流体动力条件确定附着率系数,该系数在0.05-0.4 m d-1的范围内。

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